LGA 2011 CPU Cooler 230w TDP 3pin 12VDC 2000RPM Hydraulic Bearing CPU Cooler wit vs upHere H45K6 Low Profile CPU Cooler 45mm Height - 6 Heat Pipes
Updated August 2026 — The LGA 2011 CPU Cooler is a budget-friendly option with solid performance, while the upHere H45K6 offers versatility and advanced features for a higher price.
The LGA 2011 CPU Cooler is a budget-friendly option with solid performance, while the upHere H45K6 offers versatility and advanced features for a higher price.
Why LGA 2011 CPU Cooler 230w TDP 3pin 12VDC 2000RPM Hydraulic Bearing CPU Cooler wit is better
Price
LGA 2011 CPU Cooler is cheaper at C$30.15.
Cooling Capacity
Higher TDP of 230 watts.
Lifespan
Longer lifespan of 50,000 hours.
Why upHere H45K6 Low Profile CPU Cooler 45mm Height - 6 Heat Pipes is better
Compatibility
Supports multiple Intel and AMD sockets.
Design
Low-profile design fits in compact cases.
Installation
Tool-free installation in under five minutes.
Overall score
Specifications
| Spec | LGA 2011 CPU Cooler 230w TDP 3pin 12VDC 2000RPM Hydraulic Bearing CPU Cooler wit | upHere H45K6 Low Profile CPU Cooler 45mm Height - 6 Heat Pipes |
|---|---|---|
| Brand | Cuifati | upHere |
| Interface | 3pin | Universal |
| Bearing Type | Hydraulic | Not specified |
| RPM | 2000 | 800-2800 |
| Material | Copper, Aluminium | Not specified |
Dimension comparison
Price Comparison
The LGA 2011 CPU Cooler is priced at C$30.15, while the upHere H45K6 Low Profile CPU Cooler costs C$49.99. The significant difference in price reflects the features and design of each cooler. While the LGA 2011 CPU Cooler offers a more budget-friendly option, the upHere H45K6 justifies its higher cost with advanced technology and compatibility across a wider range of sockets. If you're on a tighter budget or specifically need a cooler for a LGA 2011 motherboard, the LGA 2011 CPU Cooler is the more economical choice. However, if you require versatility and high performance, the upHere H45K6 may be worth the extra investment.
Cooling Performance
The cooling performance of the LGA 2011 CPU Cooler is rated for a thermal design power (TDP) of 230 watts, which is substantial for most standard applications. It operates at 2000 RPM, producing an airflow of 48 CFM. In contrast, the upHere H45K6 is designed for a lower TDP of 150 watts, yet it features six heat pipes that optimise thermal transfer, maintaining stable temperatures during heavy workloads. While the LGA 2011 CPU Cooler excels in raw cooling capacity, the upHere H45K6's design allows it to effectively manage heat in compact builds, making it a more versatile option for users with varying needs.
Size and Design
The LGA 2011 CPU Cooler has a standard size, making it suitable for traditional builds. However, the upHere H45K6 boasts a low-profile design at just 45mm in height, making it ideal for space-constrained Mini ITX cases. This compact design does not compromise on performance, allowing for effective cooling without obstructing RAM or other components. If you are working within a small form factor, the upHere H45K6's slim profile is a significant advantage, while the LGA 2011 CPU Cooler is better suited for larger setups where space is less of a concern.
Compatibility
The LGA 2011 CPU Cooler is specifically designed for motherboards of version B in the LGA 2011 socket family, with no compatibility for versions A and C. Meanwhile, the upHere H45K6 offers universal hardware compatibility, supporting multiple Intel and AMD sockets, including LGA 1851, 1700, 115x, 1200, 2011, 2066, and AM5/AM4/AM3. This broad compatibility makes the upHere H45K6 a more versatile option, enabling it to fit a wider array of systems. If you plan on upgrading or building a new system in the future, the upHere H45K6 ensures that you won't be limited to just one motherboard type.
Noise Levels
In terms of noise, the LGA 2011 CPU Cooler operates at a noise level of 22 dB, which is relatively quiet for a cooling solution. On the other hand, the upHere H45K6 features a slim 15mm PWM fan that can operate between 800 to 2800 RPM, generating a maximum noise level of just 27 dB(A). Despite the upHere H45K6 having a higher maximum RPM, its advanced design aims to maintain quiet operation, making it suitable for silent builds. For users who prioritise low noise levels in their setups, both coolers perform admirably, but the LGA 2011 CPU Cooler might have a slight edge in quiet operation under typical loads.
Installation Process
The installation process varies between the two coolers. The LGA 2011 CPU Cooler is designed with a 3pin interface for easy installation, specifically targeting users with compatible LGA 2011 motherboards. In contrast, the upHere H45K6 is engineered for tool-free installation, allowing users to set it up in under five minutes. This ease of installation, combined with its compatibility across various sockets, makes the upHere H45K6 a more user-friendly option for those who may not be as experienced with PC assembly. For users who value quick setup, the upHere H45K6 stands out.
Lifespan and Durability
The LGA 2011 CPU Cooler features a hydraulic bearing design that is rated for a lifespan of up to 50,000 hours, indicating a durable cooling solution. Conversely, the upHere H45K6 boasts a lifespan of 40,000 hours, which, while slightly lower, is still impressive for a CPU cooler. Both coolers are designed to withstand continuous operation, but if longevity is your primary concern, the LGA 2011 CPU Cooler offers a marginally longer lifespan. Nonetheless, both products should provide reliable performance over many years of use.
Which should you buy?
Choosing between the LGA 2011 CPU Cooler and the upHere H45K6 Low Profile CPU Cooler depends primarily on your specific needs. If you have a LGA 2011 motherboard version B and are looking for an economical cooling solution with solid performance, the LGA 2011 CPU Cooler is an excellent choice. However, if you require versatility, compatibility with multiple sockets, and an ultra-compact design for a small form factor build, the upHere H45K6 is the superior option despite its higher price. Consider your system requirements and preferences to make the best decision for your cooling needs.
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